12c6fcbb2SVadim Pasternak // SPDX-License-Identifier: GPL-2.0-or-later 22c6fcbb2SVadim Pasternak /* 32c6fcbb2SVadim Pasternak * Hardware monitoring driver for MPS Multi-phase Digital VR Controllers 42c6fcbb2SVadim Pasternak * 52c6fcbb2SVadim Pasternak * Copyright (C) 2020 Nvidia Technologies Ltd. 62c6fcbb2SVadim Pasternak */ 72c6fcbb2SVadim Pasternak 82c6fcbb2SVadim Pasternak #include <linux/err.h> 92c6fcbb2SVadim Pasternak #include <linux/i2c.h> 102c6fcbb2SVadim Pasternak #include <linux/init.h> 112c6fcbb2SVadim Pasternak #include <linux/kernel.h> 122c6fcbb2SVadim Pasternak #include <linux/module.h> 131f6f34d0SPatrick Rudolph #include <linux/of_device.h> 142c6fcbb2SVadim Pasternak #include "pmbus.h" 152c6fcbb2SVadim Pasternak 162c6fcbb2SVadim Pasternak /* Vendor specific registers. */ 172c6fcbb2SVadim Pasternak #define MP2975_MFR_APS_HYS_R2 0x0d 182c6fcbb2SVadim Pasternak #define MP2975_MFR_SLOPE_TRIM3 0x1d 192c6fcbb2SVadim Pasternak #define MP2975_MFR_VR_MULTI_CONFIG_R1 0x0d 202c6fcbb2SVadim Pasternak #define MP2975_MFR_VR_MULTI_CONFIG_R2 0x1d 212c6fcbb2SVadim Pasternak #define MP2975_MFR_APS_DECAY_ADV 0x56 222c6fcbb2SVadim Pasternak #define MP2975_MFR_DC_LOOP_CTRL 0x59 232c6fcbb2SVadim Pasternak #define MP2975_MFR_OCP_UCP_PHASE_SET 0x65 242c6fcbb2SVadim Pasternak #define MP2975_MFR_VR_CONFIG1 0x68 252c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS1_2 0x82 262c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS3_4 0x83 272c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS5_6 0x84 282c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS7_8 0x85 292c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS9_10 0x86 302c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_CS11_12 0x87 312c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_IOUT_PK 0x90 322c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_POUT_PK 0x91 332c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_VREF_R1 0xa1 342c6fcbb2SVadim Pasternak #define MP2975_MFR_READ_VREF_R2 0xa3 352c6fcbb2SVadim Pasternak #define MP2975_MFR_OVP_TH_SET 0xe5 362c6fcbb2SVadim Pasternak #define MP2975_MFR_UVP_SET 0xe6 372c6fcbb2SVadim Pasternak 385239277eSPatrick Rudolph #define MP2973_MFR_RESO_SET 0xc7 395239277eSPatrick Rudolph 402c6fcbb2SVadim Pasternak #define MP2975_VOUT_FORMAT BIT(15) 412c6fcbb2SVadim Pasternak #define MP2975_VID_STEP_SEL_R1 BIT(4) 422c6fcbb2SVadim Pasternak #define MP2975_IMVP9_EN_R1 BIT(13) 432c6fcbb2SVadim Pasternak #define MP2975_VID_STEP_SEL_R2 BIT(3) 442c6fcbb2SVadim Pasternak #define MP2975_IMVP9_EN_R2 BIT(12) 452c6fcbb2SVadim Pasternak #define MP2975_PRT_THRES_DIV_OV_EN BIT(14) 462c6fcbb2SVadim Pasternak #define MP2975_DRMOS_KCS GENMASK(13, 12) 472c6fcbb2SVadim Pasternak #define MP2975_PROT_DEV_OV_OFF 10 482c6fcbb2SVadim Pasternak #define MP2975_PROT_DEV_OV_ON 5 492c6fcbb2SVadim Pasternak #define MP2975_SENSE_AMPL BIT(11) 502c6fcbb2SVadim Pasternak #define MP2975_SENSE_AMPL_UNIT 1 512c6fcbb2SVadim Pasternak #define MP2975_SENSE_AMPL_HALF 2 522c6fcbb2SVadim Pasternak #define MP2975_VIN_UV_LIMIT_UNIT 8 532c6fcbb2SVadim Pasternak 545239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_R1 GENMASK(7, 6) 555239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_R2 GENMASK(4, 3) 565239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_DIRECT_R1 BIT(7) 575239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_LINEAR_R1 BIT(6) 585239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_DIRECT_R2 BIT(4) 595239277eSPatrick Rudolph #define MP2973_VOUT_FORMAT_LINEAR_R2 BIT(3) 605239277eSPatrick Rudolph 615239277eSPatrick Rudolph #define MP2973_MFR_VR_MULTI_CONFIG_R1 0x0d 625239277eSPatrick Rudolph #define MP2973_MFR_VR_MULTI_CONFIG_R2 0x1d 635239277eSPatrick Rudolph #define MP2973_VID_STEP_SEL_R1 BIT(4) 645239277eSPatrick Rudolph #define MP2973_IMVP9_EN_R1 BIT(14) 655239277eSPatrick Rudolph #define MP2973_VID_STEP_SEL_R2 BIT(3) 665239277eSPatrick Rudolph #define MP2973_IMVP9_EN_R2 BIT(13) 675239277eSPatrick Rudolph 6845f154dcSPatrick Rudolph #define MP2973_MFR_OCP_TOTAL_SET 0x5f 6945f154dcSPatrick Rudolph #define MP2973_OCP_TOTAL_CUR_MASK GENMASK(6, 0) 7045f154dcSPatrick Rudolph #define MP2973_MFR_OCP_LEVEL_RES BIT(15) 7145f154dcSPatrick Rudolph 725239277eSPatrick Rudolph #define MP2973_MFR_READ_IOUT_PK 0x90 735239277eSPatrick Rudolph #define MP2973_MFR_READ_POUT_PK 0x91 745239277eSPatrick Rudolph 752c6fcbb2SVadim Pasternak #define MP2975_MAX_PHASE_RAIL1 8 762c6fcbb2SVadim Pasternak #define MP2975_MAX_PHASE_RAIL2 4 775239277eSPatrick Rudolph 785239277eSPatrick Rudolph #define MP2973_MAX_PHASE_RAIL1 14 795239277eSPatrick Rudolph #define MP2973_MAX_PHASE_RAIL2 6 805239277eSPatrick Rudolph 815239277eSPatrick Rudolph #define MP2971_MAX_PHASE_RAIL1 8 825239277eSPatrick Rudolph #define MP2971_MAX_PHASE_RAIL2 3 835239277eSPatrick Rudolph 842c6fcbb2SVadim Pasternak #define MP2975_PAGE_NUM 2 852c6fcbb2SVadim Pasternak 862c6fcbb2SVadim Pasternak #define MP2975_RAIL2_FUNC (PMBUS_HAVE_VOUT | PMBUS_HAVE_STATUS_VOUT | \ 872c6fcbb2SVadim Pasternak PMBUS_HAVE_IOUT | PMBUS_HAVE_STATUS_IOUT | \ 882292e2f6SVadim Pasternak PMBUS_HAVE_POUT | PMBUS_PHASE_VIRTUAL) 892c6fcbb2SVadim Pasternak 901f6f34d0SPatrick Rudolph enum chips { 915239277eSPatrick Rudolph mp2971, mp2973, mp2975 921f6f34d0SPatrick Rudolph }; 931f6f34d0SPatrick Rudolph 94e2c90b48SPatrick Rudolph static const int mp2975_max_phases[][MP2975_PAGE_NUM] = { 95e2c90b48SPatrick Rudolph [mp2975] = { MP2975_MAX_PHASE_RAIL1, MP2975_MAX_PHASE_RAIL2 }, 965239277eSPatrick Rudolph [mp2973] = { MP2973_MAX_PHASE_RAIL1, MP2973_MAX_PHASE_RAIL2 }, 975239277eSPatrick Rudolph [mp2971] = { MP2971_MAX_PHASE_RAIL1, MP2971_MAX_PHASE_RAIL2 }, 98e2c90b48SPatrick Rudolph }; 99e2c90b48SPatrick Rudolph 1002c6fcbb2SVadim Pasternak struct mp2975_data { 1012c6fcbb2SVadim Pasternak struct pmbus_driver_info info; 1021f6f34d0SPatrick Rudolph enum chips chip_id; 1032c6fcbb2SVadim Pasternak int vout_scale; 104e2c90b48SPatrick Rudolph int max_phases[MP2975_PAGE_NUM]; 1052c6fcbb2SVadim Pasternak int vid_step[MP2975_PAGE_NUM]; 1062c6fcbb2SVadim Pasternak int vref[MP2975_PAGE_NUM]; 1072c6fcbb2SVadim Pasternak int vref_off[MP2975_PAGE_NUM]; 1082c6fcbb2SVadim Pasternak int vout_max[MP2975_PAGE_NUM]; 1092c6fcbb2SVadim Pasternak int vout_ov_fixed[MP2975_PAGE_NUM]; 1102c6fcbb2SVadim Pasternak int curr_sense_gain[MP2975_PAGE_NUM]; 1112c6fcbb2SVadim Pasternak }; 1122c6fcbb2SVadim Pasternak 1131f6f34d0SPatrick Rudolph static const struct i2c_device_id mp2975_id[] = { 1145239277eSPatrick Rudolph {"mp2971", mp2971}, 1155239277eSPatrick Rudolph {"mp2973", mp2973}, 1161f6f34d0SPatrick Rudolph {"mp2975", mp2975}, 1171f6f34d0SPatrick Rudolph {} 1181f6f34d0SPatrick Rudolph }; 1191f6f34d0SPatrick Rudolph 1201f6f34d0SPatrick Rudolph MODULE_DEVICE_TABLE(i2c, mp2975_id); 1211f6f34d0SPatrick Rudolph 12288fc1efcSPatrick Rudolph static const struct regulator_desc __maybe_unused mp2975_reg_desc[] = { 12388fc1efcSPatrick Rudolph PMBUS_REGULATOR("vout", 0), 12488fc1efcSPatrick Rudolph PMBUS_REGULATOR("vout", 1), 12588fc1efcSPatrick Rudolph }; 12688fc1efcSPatrick Rudolph 1272c6fcbb2SVadim Pasternak #define to_mp2975_data(x) container_of(x, struct mp2975_data, info) 1282c6fcbb2SVadim Pasternak 1292c6fcbb2SVadim Pasternak static int 1302c6fcbb2SVadim Pasternak mp2975_read_word_helper(struct i2c_client *client, int page, int phase, u8 reg, 1312c6fcbb2SVadim Pasternak u16 mask) 1322c6fcbb2SVadim Pasternak { 1332c6fcbb2SVadim Pasternak int ret = pmbus_read_word_data(client, page, phase, reg); 1342c6fcbb2SVadim Pasternak 1352c6fcbb2SVadim Pasternak return (ret > 0) ? ret & mask : ret; 1362c6fcbb2SVadim Pasternak } 1372c6fcbb2SVadim Pasternak 1382c6fcbb2SVadim Pasternak static int 1392c6fcbb2SVadim Pasternak mp2975_vid2direct(int vrf, int val) 1402c6fcbb2SVadim Pasternak { 1412c6fcbb2SVadim Pasternak switch (vrf) { 1422c6fcbb2SVadim Pasternak case vr12: 1432c6fcbb2SVadim Pasternak if (val >= 0x01) 1442c6fcbb2SVadim Pasternak return 250 + (val - 1) * 5; 1452c6fcbb2SVadim Pasternak break; 1462c6fcbb2SVadim Pasternak case vr13: 1472c6fcbb2SVadim Pasternak if (val >= 0x01) 1482c6fcbb2SVadim Pasternak return 500 + (val - 1) * 10; 1492c6fcbb2SVadim Pasternak break; 1502c6fcbb2SVadim Pasternak case imvp9: 1512c6fcbb2SVadim Pasternak if (val >= 0x01) 1522c6fcbb2SVadim Pasternak return 200 + (val - 1) * 10; 1532c6fcbb2SVadim Pasternak break; 1542c6fcbb2SVadim Pasternak default: 1552c6fcbb2SVadim Pasternak return -EINVAL; 1562c6fcbb2SVadim Pasternak } 1572c6fcbb2SVadim Pasternak return 0; 1582c6fcbb2SVadim Pasternak } 1592c6fcbb2SVadim Pasternak 16045f154dcSPatrick Rudolph #define MAX_LIN_MANTISSA (1023 * 1000) 16145f154dcSPatrick Rudolph #define MIN_LIN_MANTISSA (511 * 1000) 16245f154dcSPatrick Rudolph 16345f154dcSPatrick Rudolph /* Converts a milli-unit DIRECT value to LINEAR11 format */ 16445f154dcSPatrick Rudolph static u16 mp2975_data2reg_linear11(s64 val) 16545f154dcSPatrick Rudolph { 16645f154dcSPatrick Rudolph s16 exponent = 0, mantissa; 16745f154dcSPatrick Rudolph bool negative = false; 16845f154dcSPatrick Rudolph 16945f154dcSPatrick Rudolph /* simple case */ 17045f154dcSPatrick Rudolph if (val == 0) 17145f154dcSPatrick Rudolph return 0; 17245f154dcSPatrick Rudolph 17345f154dcSPatrick Rudolph /* Reduce large mantissa until it fits into 10 bit */ 17445f154dcSPatrick Rudolph while (val >= MAX_LIN_MANTISSA && exponent < 15) { 17545f154dcSPatrick Rudolph exponent++; 17645f154dcSPatrick Rudolph val >>= 1; 17745f154dcSPatrick Rudolph } 17845f154dcSPatrick Rudolph /* Increase small mantissa to improve precision */ 17945f154dcSPatrick Rudolph while (val < MIN_LIN_MANTISSA && exponent > -15) { 18045f154dcSPatrick Rudolph exponent--; 18145f154dcSPatrick Rudolph val <<= 1; 18245f154dcSPatrick Rudolph } 18345f154dcSPatrick Rudolph 18445f154dcSPatrick Rudolph /* Convert mantissa from milli-units to units */ 18545f154dcSPatrick Rudolph mantissa = clamp_val(DIV_ROUND_CLOSEST_ULL(val, 1000), 0, 0x3ff); 18645f154dcSPatrick Rudolph 18745f154dcSPatrick Rudolph /* restore sign */ 18845f154dcSPatrick Rudolph if (negative) 18945f154dcSPatrick Rudolph mantissa = -mantissa; 19045f154dcSPatrick Rudolph 19145f154dcSPatrick Rudolph /* Convert to 5 bit exponent, 11 bit mantissa */ 19245f154dcSPatrick Rudolph return (mantissa & 0x7ff) | ((exponent << 11) & 0xf800); 19345f154dcSPatrick Rudolph } 19445f154dcSPatrick Rudolph 1952c6fcbb2SVadim Pasternak static int 1962c6fcbb2SVadim Pasternak mp2975_read_phase(struct i2c_client *client, struct mp2975_data *data, 1972c6fcbb2SVadim Pasternak int page, int phase, u8 reg) 1982c6fcbb2SVadim Pasternak { 1992c6fcbb2SVadim Pasternak int ph_curr, ret; 2002c6fcbb2SVadim Pasternak 2012c6fcbb2SVadim Pasternak ret = pmbus_read_word_data(client, page, phase, reg); 2022c6fcbb2SVadim Pasternak if (ret < 0) 2032c6fcbb2SVadim Pasternak return ret; 2042c6fcbb2SVadim Pasternak 2052c6fcbb2SVadim Pasternak if (!((phase + 1) % MP2975_PAGE_NUM)) 2062c6fcbb2SVadim Pasternak ret >>= 8; 2072c6fcbb2SVadim Pasternak ret &= 0xff; 2082c6fcbb2SVadim Pasternak 2092c6fcbb2SVadim Pasternak /* 2102c6fcbb2SVadim Pasternak * Output value is calculated as: (READ_CSx / 80 – 1.23) / (Kcs * Rcs) 2112c6fcbb2SVadim Pasternak * where: 2122c6fcbb2SVadim Pasternak * - Kcs is the DrMOS current sense gain of power stage, which is 2132c6fcbb2SVadim Pasternak * obtained from the register MP2975_MFR_VR_CONFIG1, bits 13-12 with 2142c6fcbb2SVadim Pasternak * the following selection of DrMOS (data->curr_sense_gain[page]): 2152c6fcbb2SVadim Pasternak * 00b - 5µA/A, 01b - 8.5µA/A, 10b - 9.7µA/A, 11b - 10µA/A. 2162c6fcbb2SVadim Pasternak * - Rcs is the internal phase current sense resistor which is constant 2172c6fcbb2SVadim Pasternak * value 1kΩ. 2182c6fcbb2SVadim Pasternak */ 2192c6fcbb2SVadim Pasternak ph_curr = ret * 100 - 9800; 2202c6fcbb2SVadim Pasternak 2212c6fcbb2SVadim Pasternak /* 2222c6fcbb2SVadim Pasternak * Current phase sensing, providing by the device is not accurate 2232c6fcbb2SVadim Pasternak * for the light load. This because sampling of current occurrence of 2242c6fcbb2SVadim Pasternak * bit weight has a big deviation for light load. For handling such 2252c6fcbb2SVadim Pasternak * case phase current is represented as the maximum between the value 2262c6fcbb2SVadim Pasternak * calculated above and total rail current divided by number phases. 2272c6fcbb2SVadim Pasternak */ 2282c6fcbb2SVadim Pasternak ret = pmbus_read_word_data(client, page, phase, PMBUS_READ_IOUT); 2292c6fcbb2SVadim Pasternak if (ret < 0) 2302c6fcbb2SVadim Pasternak return ret; 2312c6fcbb2SVadim Pasternak 2322c6fcbb2SVadim Pasternak return max_t(int, DIV_ROUND_CLOSEST(ret, data->info.phases[page]), 2332c6fcbb2SVadim Pasternak DIV_ROUND_CLOSEST(ph_curr, data->curr_sense_gain[page])); 2342c6fcbb2SVadim Pasternak } 2352c6fcbb2SVadim Pasternak 2362c6fcbb2SVadim Pasternak static int 2372c6fcbb2SVadim Pasternak mp2975_read_phases(struct i2c_client *client, struct mp2975_data *data, 2382c6fcbb2SVadim Pasternak int page, int phase) 2392c6fcbb2SVadim Pasternak { 2402c6fcbb2SVadim Pasternak int ret; 2412c6fcbb2SVadim Pasternak 2422c6fcbb2SVadim Pasternak if (page) { 2432c6fcbb2SVadim Pasternak switch (phase) { 2442c6fcbb2SVadim Pasternak case 0 ... 1: 2452c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2462c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS7_8); 2472c6fcbb2SVadim Pasternak break; 2482c6fcbb2SVadim Pasternak case 2 ... 3: 2492c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2502c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS9_10); 2512c6fcbb2SVadim Pasternak break; 2522c6fcbb2SVadim Pasternak case 4 ... 5: 2532c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2542c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS11_12); 2552c6fcbb2SVadim Pasternak break; 2562c6fcbb2SVadim Pasternak default: 2572c6fcbb2SVadim Pasternak return -ENODATA; 2582c6fcbb2SVadim Pasternak } 2592c6fcbb2SVadim Pasternak } else { 2602c6fcbb2SVadim Pasternak switch (phase) { 2612c6fcbb2SVadim Pasternak case 0 ... 1: 2622c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2632c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS1_2); 2642c6fcbb2SVadim Pasternak break; 2652c6fcbb2SVadim Pasternak case 2 ... 3: 2662c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2672c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS3_4); 2682c6fcbb2SVadim Pasternak break; 2692c6fcbb2SVadim Pasternak case 4 ... 5: 2702c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2712c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS5_6); 2722c6fcbb2SVadim Pasternak break; 2732c6fcbb2SVadim Pasternak case 6 ... 7: 2742c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2752c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS7_8); 2762c6fcbb2SVadim Pasternak break; 2772c6fcbb2SVadim Pasternak case 8 ... 9: 2782c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2792c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS9_10); 2802c6fcbb2SVadim Pasternak break; 2812c6fcbb2SVadim Pasternak case 10 ... 11: 2822c6fcbb2SVadim Pasternak ret = mp2975_read_phase(client, data, page, phase, 2832c6fcbb2SVadim Pasternak MP2975_MFR_READ_CS11_12); 2842c6fcbb2SVadim Pasternak break; 2852c6fcbb2SVadim Pasternak default: 2862c6fcbb2SVadim Pasternak return -ENODATA; 2872c6fcbb2SVadim Pasternak } 2882c6fcbb2SVadim Pasternak } 2892c6fcbb2SVadim Pasternak return ret; 2902c6fcbb2SVadim Pasternak } 2912c6fcbb2SVadim Pasternak 2925239277eSPatrick Rudolph static int mp2973_read_word_data(struct i2c_client *client, int page, 2935239277eSPatrick Rudolph int phase, int reg) 2945239277eSPatrick Rudolph { 2955239277eSPatrick Rudolph const struct pmbus_driver_info *info = pmbus_get_driver_info(client); 2965239277eSPatrick Rudolph struct mp2975_data *data = to_mp2975_data(info); 2975239277eSPatrick Rudolph int ret; 2985239277eSPatrick Rudolph 2995239277eSPatrick Rudolph switch (reg) { 300*9da2901cSNaresh Solanki case PMBUS_STATUS_WORD: 301*9da2901cSNaresh Solanki /* MP2973 & MP2971 return PGOOD instead of PB_STATUS_POWER_GOOD_N. */ 302*9da2901cSNaresh Solanki ret = pmbus_read_word_data(client, page, phase, reg); 303*9da2901cSNaresh Solanki ret ^= PB_STATUS_POWER_GOOD_N; 304*9da2901cSNaresh Solanki break; 3055239277eSPatrick Rudolph case PMBUS_OT_FAULT_LIMIT: 3065239277eSPatrick Rudolph ret = mp2975_read_word_helper(client, page, phase, reg, 3075239277eSPatrick Rudolph GENMASK(7, 0)); 3085239277eSPatrick Rudolph break; 3095239277eSPatrick Rudolph case PMBUS_VIN_OV_FAULT_LIMIT: 3105239277eSPatrick Rudolph ret = mp2975_read_word_helper(client, page, phase, reg, 3115239277eSPatrick Rudolph GENMASK(7, 0)); 3125239277eSPatrick Rudolph if (ret < 0) 3135239277eSPatrick Rudolph return ret; 3145239277eSPatrick Rudolph 3155239277eSPatrick Rudolph ret = DIV_ROUND_CLOSEST(ret, MP2975_VIN_UV_LIMIT_UNIT); 3165239277eSPatrick Rudolph break; 3175239277eSPatrick Rudolph case PMBUS_VOUT_OV_FAULT_LIMIT: 3185239277eSPatrick Rudolph /* 3195239277eSPatrick Rudolph * MP2971 and mp2973 only supports tracking (ovp1) mode. 3205239277eSPatrick Rudolph */ 3215239277eSPatrick Rudolph ret = mp2975_read_word_helper(client, page, phase, 3225239277eSPatrick Rudolph MP2975_MFR_OVP_TH_SET, 3235239277eSPatrick Rudolph GENMASK(2, 0)); 3245239277eSPatrick Rudolph if (ret < 0) 3255239277eSPatrick Rudolph return ret; 3265239277eSPatrick Rudolph 3275239277eSPatrick Rudolph ret = data->vout_max[page] + 50 * (ret + 1); 3285239277eSPatrick Rudolph break; 3295239277eSPatrick Rudolph case PMBUS_VOUT_UV_FAULT_LIMIT: 3305239277eSPatrick Rudolph ret = mp2975_read_word_helper(client, page, phase, reg, 3315239277eSPatrick Rudolph GENMASK(8, 0)); 3325239277eSPatrick Rudolph if (ret < 0) 3335239277eSPatrick Rudolph return ret; 3345239277eSPatrick Rudolph ret = mp2975_vid2direct(info->vrm_version[page], ret); 3355239277eSPatrick Rudolph break; 3365239277eSPatrick Rudolph case PMBUS_VIRT_READ_POUT_MAX: 3375239277eSPatrick Rudolph ret = pmbus_read_word_data(client, page, phase, 3385239277eSPatrick Rudolph MP2973_MFR_READ_POUT_PK); 3395239277eSPatrick Rudolph break; 3405239277eSPatrick Rudolph case PMBUS_VIRT_READ_IOUT_MAX: 3415239277eSPatrick Rudolph ret = pmbus_read_word_data(client, page, phase, 3425239277eSPatrick Rudolph MP2973_MFR_READ_IOUT_PK); 3435239277eSPatrick Rudolph break; 34445f154dcSPatrick Rudolph case PMBUS_IOUT_OC_FAULT_LIMIT: 34545f154dcSPatrick Rudolph ret = mp2975_read_word_helper(client, page, phase, 34645f154dcSPatrick Rudolph MP2973_MFR_OCP_TOTAL_SET, 34745f154dcSPatrick Rudolph GENMASK(15, 0)); 34845f154dcSPatrick Rudolph if (ret < 0) 34945f154dcSPatrick Rudolph return ret; 35045f154dcSPatrick Rudolph 35145f154dcSPatrick Rudolph if (ret & MP2973_MFR_OCP_LEVEL_RES) 35245f154dcSPatrick Rudolph ret = 2 * (ret & MP2973_OCP_TOTAL_CUR_MASK); 35345f154dcSPatrick Rudolph else 35445f154dcSPatrick Rudolph ret = ret & MP2973_OCP_TOTAL_CUR_MASK; 35545f154dcSPatrick Rudolph 35645f154dcSPatrick Rudolph ret = mp2975_data2reg_linear11(ret * info->phases[page] * 1000); 35745f154dcSPatrick Rudolph break; 3585239277eSPatrick Rudolph case PMBUS_UT_WARN_LIMIT: 3595239277eSPatrick Rudolph case PMBUS_UT_FAULT_LIMIT: 3605239277eSPatrick Rudolph case PMBUS_VIN_UV_WARN_LIMIT: 3615239277eSPatrick Rudolph case PMBUS_VIN_UV_FAULT_LIMIT: 3625239277eSPatrick Rudolph case PMBUS_VOUT_UV_WARN_LIMIT: 3635239277eSPatrick Rudolph case PMBUS_VOUT_OV_WARN_LIMIT: 3645239277eSPatrick Rudolph case PMBUS_VIN_OV_WARN_LIMIT: 3655239277eSPatrick Rudolph case PMBUS_IIN_OC_FAULT_LIMIT: 3665239277eSPatrick Rudolph case PMBUS_IOUT_OC_LV_FAULT_LIMIT: 3675239277eSPatrick Rudolph case PMBUS_IOUT_OC_WARN_LIMIT: 3685239277eSPatrick Rudolph case PMBUS_IOUT_UC_FAULT_LIMIT: 3695239277eSPatrick Rudolph case PMBUS_POUT_OP_FAULT_LIMIT: 3705239277eSPatrick Rudolph case PMBUS_POUT_OP_WARN_LIMIT: 3715239277eSPatrick Rudolph case PMBUS_PIN_OP_WARN_LIMIT: 3725239277eSPatrick Rudolph return -ENXIO; 3735239277eSPatrick Rudolph default: 3745239277eSPatrick Rudolph return -ENODATA; 3755239277eSPatrick Rudolph } 3765239277eSPatrick Rudolph 3775239277eSPatrick Rudolph return ret; 3785239277eSPatrick Rudolph } 3795239277eSPatrick Rudolph 3802c6fcbb2SVadim Pasternak static int mp2975_read_word_data(struct i2c_client *client, int page, 3812c6fcbb2SVadim Pasternak int phase, int reg) 3822c6fcbb2SVadim Pasternak { 3832c6fcbb2SVadim Pasternak const struct pmbus_driver_info *info = pmbus_get_driver_info(client); 3842c6fcbb2SVadim Pasternak struct mp2975_data *data = to_mp2975_data(info); 3852c6fcbb2SVadim Pasternak int ret; 3862c6fcbb2SVadim Pasternak 3872c6fcbb2SVadim Pasternak switch (reg) { 3882c6fcbb2SVadim Pasternak case PMBUS_OT_FAULT_LIMIT: 3892c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, reg, 3902c6fcbb2SVadim Pasternak GENMASK(7, 0)); 3912c6fcbb2SVadim Pasternak break; 3922c6fcbb2SVadim Pasternak case PMBUS_VIN_OV_FAULT_LIMIT: 3932c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, reg, 3942c6fcbb2SVadim Pasternak GENMASK(7, 0)); 3952c6fcbb2SVadim Pasternak if (ret < 0) 3962c6fcbb2SVadim Pasternak return ret; 3972c6fcbb2SVadim Pasternak 3982c6fcbb2SVadim Pasternak ret = DIV_ROUND_CLOSEST(ret, MP2975_VIN_UV_LIMIT_UNIT); 3992c6fcbb2SVadim Pasternak break; 4002c6fcbb2SVadim Pasternak case PMBUS_VOUT_OV_FAULT_LIMIT: 4012c6fcbb2SVadim Pasternak /* 4022c6fcbb2SVadim Pasternak * Register provides two values for over-voltage protection 4032c6fcbb2SVadim Pasternak * threshold for fixed (ovp2) and tracking (ovp1) modes. The 4042c6fcbb2SVadim Pasternak * minimum of these two values is provided as over-voltage 4052c6fcbb2SVadim Pasternak * fault alarm. 4062c6fcbb2SVadim Pasternak */ 4072c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, 4082c6fcbb2SVadim Pasternak MP2975_MFR_OVP_TH_SET, 4092c6fcbb2SVadim Pasternak GENMASK(2, 0)); 4102c6fcbb2SVadim Pasternak if (ret < 0) 4112c6fcbb2SVadim Pasternak return ret; 4122c6fcbb2SVadim Pasternak 4132c6fcbb2SVadim Pasternak ret = min_t(int, data->vout_max[page] + 50 * (ret + 1), 4142c6fcbb2SVadim Pasternak data->vout_ov_fixed[page]); 4152c6fcbb2SVadim Pasternak break; 4162c6fcbb2SVadim Pasternak case PMBUS_VOUT_UV_FAULT_LIMIT: 4172c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, 4182c6fcbb2SVadim Pasternak MP2975_MFR_UVP_SET, 4192c6fcbb2SVadim Pasternak GENMASK(2, 0)); 4202c6fcbb2SVadim Pasternak if (ret < 0) 4212c6fcbb2SVadim Pasternak return ret; 4222c6fcbb2SVadim Pasternak 4232c6fcbb2SVadim Pasternak ret = DIV_ROUND_CLOSEST(data->vref[page] * 10 - 50 * 4242c6fcbb2SVadim Pasternak (ret + 1) * data->vout_scale, 10); 4252c6fcbb2SVadim Pasternak break; 4262c6fcbb2SVadim Pasternak case PMBUS_VIRT_READ_POUT_MAX: 4272c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, 4282c6fcbb2SVadim Pasternak MP2975_MFR_READ_POUT_PK, 4292c6fcbb2SVadim Pasternak GENMASK(12, 0)); 4302c6fcbb2SVadim Pasternak if (ret < 0) 4312c6fcbb2SVadim Pasternak return ret; 4322c6fcbb2SVadim Pasternak 4332c6fcbb2SVadim Pasternak ret = DIV_ROUND_CLOSEST(ret, 4); 4342c6fcbb2SVadim Pasternak break; 4352c6fcbb2SVadim Pasternak case PMBUS_VIRT_READ_IOUT_MAX: 4362c6fcbb2SVadim Pasternak ret = mp2975_read_word_helper(client, page, phase, 4372c6fcbb2SVadim Pasternak MP2975_MFR_READ_IOUT_PK, 4382c6fcbb2SVadim Pasternak GENMASK(12, 0)); 4392c6fcbb2SVadim Pasternak if (ret < 0) 4402c6fcbb2SVadim Pasternak return ret; 4412c6fcbb2SVadim Pasternak 4422c6fcbb2SVadim Pasternak ret = DIV_ROUND_CLOSEST(ret, 4); 4432c6fcbb2SVadim Pasternak break; 4442c6fcbb2SVadim Pasternak case PMBUS_READ_IOUT: 4452c6fcbb2SVadim Pasternak ret = mp2975_read_phases(client, data, page, phase); 4462c6fcbb2SVadim Pasternak if (ret < 0) 4472c6fcbb2SVadim Pasternak return ret; 4482c6fcbb2SVadim Pasternak 4492c6fcbb2SVadim Pasternak break; 4502c6fcbb2SVadim Pasternak case PMBUS_UT_WARN_LIMIT: 4512c6fcbb2SVadim Pasternak case PMBUS_UT_FAULT_LIMIT: 4522c6fcbb2SVadim Pasternak case PMBUS_VIN_UV_WARN_LIMIT: 4532c6fcbb2SVadim Pasternak case PMBUS_VIN_UV_FAULT_LIMIT: 4542c6fcbb2SVadim Pasternak case PMBUS_VOUT_UV_WARN_LIMIT: 4552c6fcbb2SVadim Pasternak case PMBUS_VOUT_OV_WARN_LIMIT: 4562c6fcbb2SVadim Pasternak case PMBUS_VIN_OV_WARN_LIMIT: 4572c6fcbb2SVadim Pasternak case PMBUS_IIN_OC_FAULT_LIMIT: 4582c6fcbb2SVadim Pasternak case PMBUS_IOUT_OC_LV_FAULT_LIMIT: 4592c6fcbb2SVadim Pasternak case PMBUS_IIN_OC_WARN_LIMIT: 4602c6fcbb2SVadim Pasternak case PMBUS_IOUT_OC_WARN_LIMIT: 4612c6fcbb2SVadim Pasternak case PMBUS_IOUT_OC_FAULT_LIMIT: 4622c6fcbb2SVadim Pasternak case PMBUS_IOUT_UC_FAULT_LIMIT: 4632c6fcbb2SVadim Pasternak case PMBUS_POUT_OP_FAULT_LIMIT: 4642c6fcbb2SVadim Pasternak case PMBUS_POUT_OP_WARN_LIMIT: 4652c6fcbb2SVadim Pasternak case PMBUS_PIN_OP_WARN_LIMIT: 4662c6fcbb2SVadim Pasternak return -ENXIO; 4672c6fcbb2SVadim Pasternak default: 4682c6fcbb2SVadim Pasternak return -ENODATA; 4692c6fcbb2SVadim Pasternak } 4702c6fcbb2SVadim Pasternak 4712c6fcbb2SVadim Pasternak return ret; 4722c6fcbb2SVadim Pasternak } 4732c6fcbb2SVadim Pasternak 474e2c90b48SPatrick Rudolph static int mp2975_identify_multiphase_rail2(struct i2c_client *client, 475e2c90b48SPatrick Rudolph struct mp2975_data *data) 4762c6fcbb2SVadim Pasternak { 4772c6fcbb2SVadim Pasternak int ret; 4782c6fcbb2SVadim Pasternak 4792c6fcbb2SVadim Pasternak /* 480e2c90b48SPatrick Rudolph * Identify multiphase for rail 2 - could be from 0 to data->max_phases[1]. 4812c6fcbb2SVadim Pasternak * In case phase number is zero – only page zero is supported 4822c6fcbb2SVadim Pasternak */ 4832c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 2); 4842c6fcbb2SVadim Pasternak if (ret < 0) 4852c6fcbb2SVadim Pasternak return ret; 4862c6fcbb2SVadim Pasternak 4872c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_VR_MULTI_CONFIG_R2); 4882c6fcbb2SVadim Pasternak if (ret < 0) 4892c6fcbb2SVadim Pasternak return ret; 4902c6fcbb2SVadim Pasternak 4912c6fcbb2SVadim Pasternak ret &= GENMASK(2, 0); 492e2c90b48SPatrick Rudolph return (ret >= data->max_phases[1]) ? data->max_phases[1] : ret; 4932c6fcbb2SVadim Pasternak } 4942c6fcbb2SVadim Pasternak 4952c6fcbb2SVadim Pasternak static void mp2975_set_phase_rail1(struct pmbus_driver_info *info) 4962c6fcbb2SVadim Pasternak { 4972c6fcbb2SVadim Pasternak int i; 4982c6fcbb2SVadim Pasternak 4992c6fcbb2SVadim Pasternak for (i = 0 ; i < info->phases[0]; i++) 5002c6fcbb2SVadim Pasternak info->pfunc[i] = PMBUS_HAVE_IOUT; 5012c6fcbb2SVadim Pasternak } 5022c6fcbb2SVadim Pasternak 5032c6fcbb2SVadim Pasternak static void 5042c6fcbb2SVadim Pasternak mp2975_set_phase_rail2(struct pmbus_driver_info *info, int num_phases) 5052c6fcbb2SVadim Pasternak { 5062c6fcbb2SVadim Pasternak int i; 5072c6fcbb2SVadim Pasternak 5082c6fcbb2SVadim Pasternak /* Set phases for rail 2 from upper to lower. */ 5092c6fcbb2SVadim Pasternak for (i = 1; i <= num_phases; i++) 5102c6fcbb2SVadim Pasternak info->pfunc[MP2975_MAX_PHASE_RAIL1 - i] = PMBUS_HAVE_IOUT; 5112c6fcbb2SVadim Pasternak } 5122c6fcbb2SVadim Pasternak 5132c6fcbb2SVadim Pasternak static int 5142c6fcbb2SVadim Pasternak mp2975_identify_multiphase(struct i2c_client *client, struct mp2975_data *data, 5152c6fcbb2SVadim Pasternak struct pmbus_driver_info *info) 5162c6fcbb2SVadim Pasternak { 5172c6fcbb2SVadim Pasternak int num_phases2, ret; 5182c6fcbb2SVadim Pasternak 5192c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 2); 5202c6fcbb2SVadim Pasternak if (ret < 0) 5212c6fcbb2SVadim Pasternak return ret; 5222c6fcbb2SVadim Pasternak 523e2c90b48SPatrick Rudolph /* Identify multiphase for rail 1 - could be from 1 to data->max_phases[0]. */ 5242c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_VR_MULTI_CONFIG_R1); 5252c6fcbb2SVadim Pasternak if (ret <= 0) 5262c6fcbb2SVadim Pasternak return ret; 5272c6fcbb2SVadim Pasternak 5282c6fcbb2SVadim Pasternak info->phases[0] = ret & GENMASK(3, 0); 5292c6fcbb2SVadim Pasternak 5302c6fcbb2SVadim Pasternak /* 531e2c90b48SPatrick Rudolph * The device provides a total of $n PWM pins, and can be configured 5322c6fcbb2SVadim Pasternak * to different phase count applications for rail 1 and rail 2. 533e2c90b48SPatrick Rudolph * Rail 1 can be set to $n phases, while rail 2 can be set to less than 534e2c90b48SPatrick Rudolph * that. When rail 1’s phase count is configured as 0, rail 5352c6fcbb2SVadim Pasternak * 1 operates with 1-phase DCM. When rail 2 phase count is configured 5362c6fcbb2SVadim Pasternak * as 0, rail 2 is disabled. 5372c6fcbb2SVadim Pasternak */ 538e2c90b48SPatrick Rudolph if (info->phases[0] > data->max_phases[0]) 5392c6fcbb2SVadim Pasternak return -EINVAL; 5402c6fcbb2SVadim Pasternak 54145f154dcSPatrick Rudolph if (data->chip_id == mp2975) { 5422c6fcbb2SVadim Pasternak mp2975_set_phase_rail1(info); 543e2c90b48SPatrick Rudolph num_phases2 = min(data->max_phases[0] - info->phases[0], 544e2c90b48SPatrick Rudolph data->max_phases[1]); 5452c6fcbb2SVadim Pasternak if (info->phases[1] && info->phases[1] <= num_phases2) 5462c6fcbb2SVadim Pasternak mp2975_set_phase_rail2(info, num_phases2); 54745f154dcSPatrick Rudolph } 5482c6fcbb2SVadim Pasternak 5492c6fcbb2SVadim Pasternak return 0; 5502c6fcbb2SVadim Pasternak } 5512c6fcbb2SVadim Pasternak 5522c6fcbb2SVadim Pasternak static int 5532c6fcbb2SVadim Pasternak mp2975_identify_vid(struct i2c_client *client, struct mp2975_data *data, 5542c6fcbb2SVadim Pasternak struct pmbus_driver_info *info, u32 reg, int page, 5552c6fcbb2SVadim Pasternak u32 imvp_bit, u32 vr_bit) 5562c6fcbb2SVadim Pasternak { 5572c6fcbb2SVadim Pasternak int ret; 5582c6fcbb2SVadim Pasternak 5592c6fcbb2SVadim Pasternak /* Identify VID mode and step selection. */ 5602c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, reg); 5612c6fcbb2SVadim Pasternak if (ret < 0) 5622c6fcbb2SVadim Pasternak return ret; 5632c6fcbb2SVadim Pasternak 5642c6fcbb2SVadim Pasternak if (ret & imvp_bit) { 5652c6fcbb2SVadim Pasternak info->vrm_version[page] = imvp9; 5662c6fcbb2SVadim Pasternak data->vid_step[page] = MP2975_PROT_DEV_OV_OFF; 5672c6fcbb2SVadim Pasternak } else if (ret & vr_bit) { 5682c6fcbb2SVadim Pasternak info->vrm_version[page] = vr12; 5692c6fcbb2SVadim Pasternak data->vid_step[page] = MP2975_PROT_DEV_OV_ON; 5702c6fcbb2SVadim Pasternak } else { 5712c6fcbb2SVadim Pasternak info->vrm_version[page] = vr13; 5722c6fcbb2SVadim Pasternak data->vid_step[page] = MP2975_PROT_DEV_OV_OFF; 5732c6fcbb2SVadim Pasternak } 5742c6fcbb2SVadim Pasternak 5752c6fcbb2SVadim Pasternak return 0; 5762c6fcbb2SVadim Pasternak } 5772c6fcbb2SVadim Pasternak 5782c6fcbb2SVadim Pasternak static int 5792c6fcbb2SVadim Pasternak mp2975_identify_rails_vid(struct i2c_client *client, struct mp2975_data *data, 5802c6fcbb2SVadim Pasternak struct pmbus_driver_info *info) 5812c6fcbb2SVadim Pasternak { 5822c6fcbb2SVadim Pasternak int ret; 5832c6fcbb2SVadim Pasternak 5842c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 2); 5852c6fcbb2SVadim Pasternak if (ret < 0) 5862c6fcbb2SVadim Pasternak return ret; 5872c6fcbb2SVadim Pasternak 5882c6fcbb2SVadim Pasternak /* Identify VID mode for rail 1. */ 5892c6fcbb2SVadim Pasternak ret = mp2975_identify_vid(client, data, info, 5902c6fcbb2SVadim Pasternak MP2975_MFR_VR_MULTI_CONFIG_R1, 0, 5912c6fcbb2SVadim Pasternak MP2975_IMVP9_EN_R1, MP2975_VID_STEP_SEL_R1); 5922c6fcbb2SVadim Pasternak if (ret < 0) 5932c6fcbb2SVadim Pasternak return ret; 5942c6fcbb2SVadim Pasternak 5952c6fcbb2SVadim Pasternak /* Identify VID mode for rail 2, if connected. */ 5962c6fcbb2SVadim Pasternak if (info->phases[1]) 5972c6fcbb2SVadim Pasternak ret = mp2975_identify_vid(client, data, info, 5982c6fcbb2SVadim Pasternak MP2975_MFR_VR_MULTI_CONFIG_R2, 1, 5992c6fcbb2SVadim Pasternak MP2975_IMVP9_EN_R2, 6002c6fcbb2SVadim Pasternak MP2975_VID_STEP_SEL_R2); 6015239277eSPatrick Rudolph 6025239277eSPatrick Rudolph return ret; 6035239277eSPatrick Rudolph } 6045239277eSPatrick Rudolph 6055239277eSPatrick Rudolph static int 6065239277eSPatrick Rudolph mp2973_identify_rails_vid(struct i2c_client *client, struct mp2975_data *data, 6075239277eSPatrick Rudolph struct pmbus_driver_info *info) 6085239277eSPatrick Rudolph { 6095239277eSPatrick Rudolph int ret; 6105239277eSPatrick Rudolph 6115239277eSPatrick Rudolph ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 2); 6125239277eSPatrick Rudolph if (ret < 0) 6135239277eSPatrick Rudolph return ret; 6145239277eSPatrick Rudolph 6155239277eSPatrick Rudolph /* Identify VID mode for rail 1. */ 6165239277eSPatrick Rudolph ret = mp2975_identify_vid(client, data, info, 6175239277eSPatrick Rudolph MP2973_MFR_VR_MULTI_CONFIG_R1, 0, 6185239277eSPatrick Rudolph MP2973_IMVP9_EN_R1, MP2973_VID_STEP_SEL_R1); 6195239277eSPatrick Rudolph 6205239277eSPatrick Rudolph if (ret < 0) 6215239277eSPatrick Rudolph return ret; 6225239277eSPatrick Rudolph 6235239277eSPatrick Rudolph /* Identify VID mode for rail 2, if connected. */ 6245239277eSPatrick Rudolph if (info->phases[1]) 6255239277eSPatrick Rudolph ret = mp2975_identify_vid(client, data, info, 6265239277eSPatrick Rudolph MP2973_MFR_VR_MULTI_CONFIG_R2, 1, 6275239277eSPatrick Rudolph MP2973_IMVP9_EN_R2, 6285239277eSPatrick Rudolph MP2973_VID_STEP_SEL_R2); 6295239277eSPatrick Rudolph 6302c6fcbb2SVadim Pasternak return ret; 6312c6fcbb2SVadim Pasternak } 6322c6fcbb2SVadim Pasternak 6332c6fcbb2SVadim Pasternak static int 6342c6fcbb2SVadim Pasternak mp2975_current_sense_gain_get(struct i2c_client *client, 6352c6fcbb2SVadim Pasternak struct mp2975_data *data) 6362c6fcbb2SVadim Pasternak { 6372c6fcbb2SVadim Pasternak int i, ret; 6382c6fcbb2SVadim Pasternak 6392c6fcbb2SVadim Pasternak /* 6402c6fcbb2SVadim Pasternak * Obtain DrMOS current sense gain of power stage from the register 6412c6fcbb2SVadim Pasternak * MP2975_MFR_VR_CONFIG1, bits 13-12. The value is selected as below: 6422c6fcbb2SVadim Pasternak * 00b - 5µA/A, 01b - 8.5µA/A, 10b - 9.7µA/A, 11b - 10µA/A. Other 6432c6fcbb2SVadim Pasternak * values are invalid. 6442c6fcbb2SVadim Pasternak */ 6452c6fcbb2SVadim Pasternak for (i = 0 ; i < data->info.pages; i++) { 6462c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, i); 6472c6fcbb2SVadim Pasternak if (ret < 0) 6482c6fcbb2SVadim Pasternak return ret; 6492c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, 6502c6fcbb2SVadim Pasternak MP2975_MFR_VR_CONFIG1); 6512c6fcbb2SVadim Pasternak if (ret < 0) 6522c6fcbb2SVadim Pasternak return ret; 6532c6fcbb2SVadim Pasternak 6542c6fcbb2SVadim Pasternak switch ((ret & MP2975_DRMOS_KCS) >> 12) { 6552c6fcbb2SVadim Pasternak case 0: 6562c6fcbb2SVadim Pasternak data->curr_sense_gain[i] = 50; 6572c6fcbb2SVadim Pasternak break; 6582c6fcbb2SVadim Pasternak case 1: 6592c6fcbb2SVadim Pasternak data->curr_sense_gain[i] = 85; 6602c6fcbb2SVadim Pasternak break; 6612c6fcbb2SVadim Pasternak case 2: 6622c6fcbb2SVadim Pasternak data->curr_sense_gain[i] = 97; 6632c6fcbb2SVadim Pasternak break; 6642c6fcbb2SVadim Pasternak default: 6652c6fcbb2SVadim Pasternak data->curr_sense_gain[i] = 100; 6662c6fcbb2SVadim Pasternak break; 6672c6fcbb2SVadim Pasternak } 6682c6fcbb2SVadim Pasternak } 6692c6fcbb2SVadim Pasternak 6702c6fcbb2SVadim Pasternak return 0; 6712c6fcbb2SVadim Pasternak } 6722c6fcbb2SVadim Pasternak 6732c6fcbb2SVadim Pasternak static int 6742c6fcbb2SVadim Pasternak mp2975_vref_get(struct i2c_client *client, struct mp2975_data *data, 6752c6fcbb2SVadim Pasternak struct pmbus_driver_info *info) 6762c6fcbb2SVadim Pasternak { 6772c6fcbb2SVadim Pasternak int ret; 6782c6fcbb2SVadim Pasternak 6792c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 3); 6802c6fcbb2SVadim Pasternak if (ret < 0) 6812c6fcbb2SVadim Pasternak return ret; 6822c6fcbb2SVadim Pasternak 6832c6fcbb2SVadim Pasternak /* Get voltage reference value for rail 1. */ 6842c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_READ_VREF_R1); 6852c6fcbb2SVadim Pasternak if (ret < 0) 6862c6fcbb2SVadim Pasternak return ret; 6872c6fcbb2SVadim Pasternak 6882c6fcbb2SVadim Pasternak data->vref[0] = ret * data->vid_step[0]; 6892c6fcbb2SVadim Pasternak 6902c6fcbb2SVadim Pasternak /* Get voltage reference value for rail 2, if connected. */ 6912c6fcbb2SVadim Pasternak if (data->info.pages == MP2975_PAGE_NUM) { 6922c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_READ_VREF_R2); 6932c6fcbb2SVadim Pasternak if (ret < 0) 6942c6fcbb2SVadim Pasternak return ret; 6952c6fcbb2SVadim Pasternak 6962c6fcbb2SVadim Pasternak data->vref[1] = ret * data->vid_step[1]; 6972c6fcbb2SVadim Pasternak } 6982c6fcbb2SVadim Pasternak return 0; 6992c6fcbb2SVadim Pasternak } 7002c6fcbb2SVadim Pasternak 7012c6fcbb2SVadim Pasternak static int 7022c6fcbb2SVadim Pasternak mp2975_vref_offset_get(struct i2c_client *client, struct mp2975_data *data, 7032c6fcbb2SVadim Pasternak int page) 7042c6fcbb2SVadim Pasternak { 7052c6fcbb2SVadim Pasternak int ret; 7062c6fcbb2SVadim Pasternak 7072c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_OVP_TH_SET); 7082c6fcbb2SVadim Pasternak if (ret < 0) 7092c6fcbb2SVadim Pasternak return ret; 7102c6fcbb2SVadim Pasternak 7112c6fcbb2SVadim Pasternak switch ((ret & GENMASK(5, 3)) >> 3) { 7122c6fcbb2SVadim Pasternak case 1: 7132c6fcbb2SVadim Pasternak data->vref_off[page] = 140; 7142c6fcbb2SVadim Pasternak break; 7152c6fcbb2SVadim Pasternak case 2: 7162c6fcbb2SVadim Pasternak data->vref_off[page] = 220; 7172c6fcbb2SVadim Pasternak break; 7182c6fcbb2SVadim Pasternak case 4: 7192c6fcbb2SVadim Pasternak data->vref_off[page] = 400; 7202c6fcbb2SVadim Pasternak break; 7212c6fcbb2SVadim Pasternak default: 7222c6fcbb2SVadim Pasternak return -EINVAL; 7232c6fcbb2SVadim Pasternak } 7242c6fcbb2SVadim Pasternak return 0; 7252c6fcbb2SVadim Pasternak } 7262c6fcbb2SVadim Pasternak 7272c6fcbb2SVadim Pasternak static int 7282c6fcbb2SVadim Pasternak mp2975_vout_max_get(struct i2c_client *client, struct mp2975_data *data, 7292c6fcbb2SVadim Pasternak struct pmbus_driver_info *info, int page) 7302c6fcbb2SVadim Pasternak { 7312c6fcbb2SVadim Pasternak int ret; 7322c6fcbb2SVadim Pasternak 7332c6fcbb2SVadim Pasternak /* Get maximum reference voltage of VID-DAC in VID format. */ 7342c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, PMBUS_VOUT_MAX); 7352c6fcbb2SVadim Pasternak if (ret < 0) 7362c6fcbb2SVadim Pasternak return ret; 7372c6fcbb2SVadim Pasternak 7382c6fcbb2SVadim Pasternak data->vout_max[page] = mp2975_vid2direct(info->vrm_version[page], ret & 7392c6fcbb2SVadim Pasternak GENMASK(8, 0)); 7402c6fcbb2SVadim Pasternak return 0; 7412c6fcbb2SVadim Pasternak } 7422c6fcbb2SVadim Pasternak 7432c6fcbb2SVadim Pasternak static int 7441feb31e8SPatrick Rudolph mp2975_set_vout_format(struct i2c_client *client, 7452c6fcbb2SVadim Pasternak struct mp2975_data *data, int page) 7462c6fcbb2SVadim Pasternak { 7475239277eSPatrick Rudolph int ret, i; 7482c6fcbb2SVadim Pasternak 7495239277eSPatrick Rudolph /* Enable DIRECT VOUT format 1mV/LSB */ 7505239277eSPatrick Rudolph if (data->chip_id == mp2975) { 7512c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_DC_LOOP_CTRL); 7522c6fcbb2SVadim Pasternak if (ret < 0) 7532c6fcbb2SVadim Pasternak return ret; 7541feb31e8SPatrick Rudolph if (ret & MP2975_VOUT_FORMAT) { 7551feb31e8SPatrick Rudolph ret &= ~MP2975_VOUT_FORMAT; 7561feb31e8SPatrick Rudolph ret = i2c_smbus_write_word_data(client, MP2975_MFR_DC_LOOP_CTRL, ret); 7571feb31e8SPatrick Rudolph } 7585239277eSPatrick Rudolph } else { 7595239277eSPatrick Rudolph ret = i2c_smbus_read_word_data(client, MP2973_MFR_RESO_SET); 7605239277eSPatrick Rudolph if (ret < 0) 7615239277eSPatrick Rudolph return ret; 7625239277eSPatrick Rudolph i = ret; 7635239277eSPatrick Rudolph 7645239277eSPatrick Rudolph if (page == 0) { 7655239277eSPatrick Rudolph i &= ~MP2973_VOUT_FORMAT_R1; 7665239277eSPatrick Rudolph i |= MP2973_VOUT_FORMAT_DIRECT_R1; 7675239277eSPatrick Rudolph } else { 7685239277eSPatrick Rudolph i &= ~MP2973_VOUT_FORMAT_R2; 7695239277eSPatrick Rudolph i |= MP2973_VOUT_FORMAT_DIRECT_R2; 7705239277eSPatrick Rudolph } 7715239277eSPatrick Rudolph if (i != ret) 7725239277eSPatrick Rudolph ret = i2c_smbus_write_word_data(client, MP2973_MFR_RESO_SET, i); 7735239277eSPatrick Rudolph } 7741feb31e8SPatrick Rudolph return ret; 7752c6fcbb2SVadim Pasternak } 7762c6fcbb2SVadim Pasternak 7772c6fcbb2SVadim Pasternak static int 7782c6fcbb2SVadim Pasternak mp2975_vout_ov_scale_get(struct i2c_client *client, struct mp2975_data *data, 7792c6fcbb2SVadim Pasternak struct pmbus_driver_info *info) 7802c6fcbb2SVadim Pasternak { 7812c6fcbb2SVadim Pasternak int thres_dev, sense_ampl, ret; 7822c6fcbb2SVadim Pasternak 7832c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, 0); 7842c6fcbb2SVadim Pasternak if (ret < 0) 7852c6fcbb2SVadim Pasternak return ret; 7862c6fcbb2SVadim Pasternak 7872c6fcbb2SVadim Pasternak /* 7882c6fcbb2SVadim Pasternak * Get divider for over- and under-voltage protection thresholds 7892c6fcbb2SVadim Pasternak * configuration from the Advanced Options of Auto Phase Shedding and 7902c6fcbb2SVadim Pasternak * decay register. 7912c6fcbb2SVadim Pasternak */ 7922c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, MP2975_MFR_APS_DECAY_ADV); 7932c6fcbb2SVadim Pasternak if (ret < 0) 7942c6fcbb2SVadim Pasternak return ret; 7952c6fcbb2SVadim Pasternak thres_dev = ret & MP2975_PRT_THRES_DIV_OV_EN ? MP2975_PROT_DEV_OV_ON : 7962c6fcbb2SVadim Pasternak MP2975_PROT_DEV_OV_OFF; 7972c6fcbb2SVadim Pasternak 7982c6fcbb2SVadim Pasternak /* Select the gain of remote sense amplifier. */ 7992c6fcbb2SVadim Pasternak ret = i2c_smbus_read_word_data(client, PMBUS_VOUT_SCALE_LOOP); 8002c6fcbb2SVadim Pasternak if (ret < 0) 8012c6fcbb2SVadim Pasternak return ret; 8022c6fcbb2SVadim Pasternak sense_ampl = ret & MP2975_SENSE_AMPL ? MP2975_SENSE_AMPL_HALF : 8032c6fcbb2SVadim Pasternak MP2975_SENSE_AMPL_UNIT; 8042c6fcbb2SVadim Pasternak 8052c6fcbb2SVadim Pasternak data->vout_scale = sense_ampl * thres_dev; 8062c6fcbb2SVadim Pasternak 8072c6fcbb2SVadim Pasternak return 0; 8082c6fcbb2SVadim Pasternak } 8092c6fcbb2SVadim Pasternak 8102c6fcbb2SVadim Pasternak static int 8112c6fcbb2SVadim Pasternak mp2975_vout_per_rail_config_get(struct i2c_client *client, 8122c6fcbb2SVadim Pasternak struct mp2975_data *data, 8132c6fcbb2SVadim Pasternak struct pmbus_driver_info *info) 8142c6fcbb2SVadim Pasternak { 8152c6fcbb2SVadim Pasternak int i, ret; 8162c6fcbb2SVadim Pasternak 8172c6fcbb2SVadim Pasternak for (i = 0; i < data->info.pages; i++) { 8182c6fcbb2SVadim Pasternak ret = i2c_smbus_write_byte_data(client, PMBUS_PAGE, i); 8192c6fcbb2SVadim Pasternak if (ret < 0) 8205239277eSPatrick Rudolph continue; 8212c6fcbb2SVadim Pasternak 8225239277eSPatrick Rudolph /* Set VOUT format for READ_VOUT command : direct. */ 8235239277eSPatrick Rudolph ret = mp2975_set_vout_format(client, data, i); 8242c6fcbb2SVadim Pasternak if (ret < 0) 8252c6fcbb2SVadim Pasternak return ret; 8262c6fcbb2SVadim Pasternak 8272c6fcbb2SVadim Pasternak /* Obtain maximum voltage values. */ 8282c6fcbb2SVadim Pasternak ret = mp2975_vout_max_get(client, data, info, i); 8292c6fcbb2SVadim Pasternak if (ret < 0) 8302c6fcbb2SVadim Pasternak return ret; 8312c6fcbb2SVadim Pasternak 8325239277eSPatrick Rudolph /* Skip if reading Vref is unsupported */ 8335239277eSPatrick Rudolph if (data->chip_id != mp2975) 8345239277eSPatrick Rudolph continue; 8355239277eSPatrick Rudolph 8365239277eSPatrick Rudolph /* Obtain voltage reference offsets. */ 8375239277eSPatrick Rudolph ret = mp2975_vref_offset_get(client, data, i); 8382c6fcbb2SVadim Pasternak if (ret < 0) 8392c6fcbb2SVadim Pasternak return ret; 8402c6fcbb2SVadim Pasternak 8412c6fcbb2SVadim Pasternak /* 8422c6fcbb2SVadim Pasternak * Set over-voltage fixed value. Thresholds are provided as 8432c6fcbb2SVadim Pasternak * fixed value, and tracking value. The minimum of them are 8442c6fcbb2SVadim Pasternak * exposed as over-voltage critical threshold. 8452c6fcbb2SVadim Pasternak */ 8462c6fcbb2SVadim Pasternak data->vout_ov_fixed[i] = data->vref[i] + 8472c6fcbb2SVadim Pasternak DIV_ROUND_CLOSEST(data->vref_off[i] * 8482c6fcbb2SVadim Pasternak data->vout_scale, 8492c6fcbb2SVadim Pasternak 10); 8502c6fcbb2SVadim Pasternak } 8512c6fcbb2SVadim Pasternak 8522c6fcbb2SVadim Pasternak return 0; 8532c6fcbb2SVadim Pasternak } 8542c6fcbb2SVadim Pasternak 8552c6fcbb2SVadim Pasternak static struct pmbus_driver_info mp2975_info = { 8562c6fcbb2SVadim Pasternak .pages = 1, 8572c6fcbb2SVadim Pasternak .format[PSC_VOLTAGE_IN] = linear, 8582c6fcbb2SVadim Pasternak .format[PSC_VOLTAGE_OUT] = direct, 8592c6fcbb2SVadim Pasternak .format[PSC_TEMPERATURE] = direct, 8602c6fcbb2SVadim Pasternak .format[PSC_CURRENT_IN] = linear, 8612c6fcbb2SVadim Pasternak .format[PSC_CURRENT_OUT] = direct, 8622c6fcbb2SVadim Pasternak .format[PSC_POWER] = direct, 8632c6fcbb2SVadim Pasternak .m[PSC_TEMPERATURE] = 1, 8642c6fcbb2SVadim Pasternak .m[PSC_VOLTAGE_OUT] = 1, 8652c6fcbb2SVadim Pasternak .R[PSC_VOLTAGE_OUT] = 3, 8662c6fcbb2SVadim Pasternak .m[PSC_CURRENT_OUT] = 1, 8672c6fcbb2SVadim Pasternak .m[PSC_POWER] = 1, 8682c6fcbb2SVadim Pasternak .func[0] = PMBUS_HAVE_VIN | PMBUS_HAVE_VOUT | PMBUS_HAVE_STATUS_VOUT | 8692c6fcbb2SVadim Pasternak PMBUS_HAVE_IIN | PMBUS_HAVE_IOUT | PMBUS_HAVE_STATUS_IOUT | 8702c6fcbb2SVadim Pasternak PMBUS_HAVE_TEMP | PMBUS_HAVE_STATUS_TEMP | PMBUS_HAVE_POUT | 8712c6fcbb2SVadim Pasternak PMBUS_HAVE_PIN | PMBUS_HAVE_STATUS_INPUT | PMBUS_PHASE_VIRTUAL, 8722c6fcbb2SVadim Pasternak .read_word_data = mp2975_read_word_data, 87388fc1efcSPatrick Rudolph #if IS_ENABLED(CONFIG_SENSORS_MP2975_REGULATOR) 87488fc1efcSPatrick Rudolph .num_regulators = 1, 87588fc1efcSPatrick Rudolph .reg_desc = mp2975_reg_desc, 87688fc1efcSPatrick Rudolph #endif 8772c6fcbb2SVadim Pasternak }; 8782c6fcbb2SVadim Pasternak 8795239277eSPatrick Rudolph static struct pmbus_driver_info mp2973_info = { 8805239277eSPatrick Rudolph .pages = 1, 8815239277eSPatrick Rudolph .format[PSC_VOLTAGE_IN] = linear, 8825239277eSPatrick Rudolph .format[PSC_VOLTAGE_OUT] = direct, 8835239277eSPatrick Rudolph .format[PSC_TEMPERATURE] = linear, 8845239277eSPatrick Rudolph .format[PSC_CURRENT_IN] = linear, 8855239277eSPatrick Rudolph .format[PSC_CURRENT_OUT] = linear, 8865239277eSPatrick Rudolph .format[PSC_POWER] = linear, 8875239277eSPatrick Rudolph .m[PSC_VOLTAGE_OUT] = 1, 8885239277eSPatrick Rudolph .R[PSC_VOLTAGE_OUT] = 3, 8895239277eSPatrick Rudolph .func[0] = PMBUS_HAVE_VIN | PMBUS_HAVE_VOUT | PMBUS_HAVE_STATUS_VOUT | 8905239277eSPatrick Rudolph PMBUS_HAVE_IIN | PMBUS_HAVE_IOUT | PMBUS_HAVE_STATUS_IOUT | 8915239277eSPatrick Rudolph PMBUS_HAVE_TEMP | PMBUS_HAVE_STATUS_TEMP | PMBUS_HAVE_POUT | 8925239277eSPatrick Rudolph PMBUS_HAVE_PIN | PMBUS_HAVE_STATUS_INPUT, 8935239277eSPatrick Rudolph .read_word_data = mp2973_read_word_data, 89488fc1efcSPatrick Rudolph #if IS_ENABLED(CONFIG_SENSORS_MP2975_REGULATOR) 89588fc1efcSPatrick Rudolph .num_regulators = 1, 89688fc1efcSPatrick Rudolph .reg_desc = mp2975_reg_desc, 89788fc1efcSPatrick Rudolph #endif 8985239277eSPatrick Rudolph }; 8995239277eSPatrick Rudolph 9002c6fcbb2SVadim Pasternak static int mp2975_probe(struct i2c_client *client) 9012c6fcbb2SVadim Pasternak { 9022c6fcbb2SVadim Pasternak struct pmbus_driver_info *info; 9032c6fcbb2SVadim Pasternak struct mp2975_data *data; 9042c6fcbb2SVadim Pasternak int ret; 9052c6fcbb2SVadim Pasternak 9062c6fcbb2SVadim Pasternak data = devm_kzalloc(&client->dev, sizeof(struct mp2975_data), 9072c6fcbb2SVadim Pasternak GFP_KERNEL); 9082c6fcbb2SVadim Pasternak if (!data) 9092c6fcbb2SVadim Pasternak return -ENOMEM; 9102c6fcbb2SVadim Pasternak 9111f6f34d0SPatrick Rudolph if (client->dev.of_node) 9121f6f34d0SPatrick Rudolph data->chip_id = (enum chips)(unsigned long)of_device_get_match_data(&client->dev); 9131f6f34d0SPatrick Rudolph else 9141f6f34d0SPatrick Rudolph data->chip_id = i2c_match_id(mp2975_id, client)->driver_data; 9151f6f34d0SPatrick Rudolph 916e2c90b48SPatrick Rudolph memcpy(data->max_phases, mp2975_max_phases[data->chip_id], 917e2c90b48SPatrick Rudolph sizeof(data->max_phases)); 918e2c90b48SPatrick Rudolph 9195239277eSPatrick Rudolph if (data->chip_id == mp2975) 9205239277eSPatrick Rudolph memcpy(&data->info, &mp2975_info, sizeof(*info)); 9215239277eSPatrick Rudolph else 9225239277eSPatrick Rudolph memcpy(&data->info, &mp2973_info, sizeof(*info)); 9235239277eSPatrick Rudolph 9242c6fcbb2SVadim Pasternak info = &data->info; 9252c6fcbb2SVadim Pasternak 9262c6fcbb2SVadim Pasternak /* Identify multiphase configuration for rail 2. */ 927e2c90b48SPatrick Rudolph ret = mp2975_identify_multiphase_rail2(client, data); 9282c6fcbb2SVadim Pasternak if (ret < 0) 9292c6fcbb2SVadim Pasternak return ret; 9302c6fcbb2SVadim Pasternak 9312c6fcbb2SVadim Pasternak if (ret) { 9322c6fcbb2SVadim Pasternak /* Two rails are connected. */ 9332c6fcbb2SVadim Pasternak data->info.pages = MP2975_PAGE_NUM; 9342c6fcbb2SVadim Pasternak data->info.phases[1] = ret; 9352c6fcbb2SVadim Pasternak data->info.func[1] = MP2975_RAIL2_FUNC; 93688fc1efcSPatrick Rudolph if (IS_ENABLED(CONFIG_SENSORS_MP2975_REGULATOR)) 93788fc1efcSPatrick Rudolph data->info.num_regulators = MP2975_PAGE_NUM; 9382c6fcbb2SVadim Pasternak } 9392c6fcbb2SVadim Pasternak 9402c6fcbb2SVadim Pasternak /* Identify multiphase configuration. */ 9412c6fcbb2SVadim Pasternak ret = mp2975_identify_multiphase(client, data, info); 9422c6fcbb2SVadim Pasternak if (ret) 9432c6fcbb2SVadim Pasternak return ret; 9442c6fcbb2SVadim Pasternak 94545f154dcSPatrick Rudolph if (data->chip_id == mp2975) { 9462c6fcbb2SVadim Pasternak /* Identify VID setting per rail. */ 9472c6fcbb2SVadim Pasternak ret = mp2975_identify_rails_vid(client, data, info); 9482c6fcbb2SVadim Pasternak if (ret < 0) 9492c6fcbb2SVadim Pasternak return ret; 9502c6fcbb2SVadim Pasternak 9512c6fcbb2SVadim Pasternak /* Obtain current sense gain of power stage. */ 9522c6fcbb2SVadim Pasternak ret = mp2975_current_sense_gain_get(client, data); 9532c6fcbb2SVadim Pasternak if (ret) 9542c6fcbb2SVadim Pasternak return ret; 9552c6fcbb2SVadim Pasternak 9562c6fcbb2SVadim Pasternak /* Obtain voltage reference values. */ 9572c6fcbb2SVadim Pasternak ret = mp2975_vref_get(client, data, info); 9582c6fcbb2SVadim Pasternak if (ret) 9592c6fcbb2SVadim Pasternak return ret; 9602c6fcbb2SVadim Pasternak 9612c6fcbb2SVadim Pasternak /* Obtain vout over-voltage scales. */ 9622c6fcbb2SVadim Pasternak ret = mp2975_vout_ov_scale_get(client, data, info); 9632c6fcbb2SVadim Pasternak if (ret < 0) 9642c6fcbb2SVadim Pasternak return ret; 9655239277eSPatrick Rudolph } else { 9665239277eSPatrick Rudolph /* Identify VID setting per rail. */ 9675239277eSPatrick Rudolph ret = mp2973_identify_rails_vid(client, data, info); 9685239277eSPatrick Rudolph if (ret < 0) 9695239277eSPatrick Rudolph return ret; 9705239277eSPatrick Rudolph } 9712c6fcbb2SVadim Pasternak 9722c6fcbb2SVadim Pasternak /* Obtain offsets, maximum and format for vout. */ 9732c6fcbb2SVadim Pasternak ret = mp2975_vout_per_rail_config_get(client, data, info); 9742c6fcbb2SVadim Pasternak if (ret) 9752c6fcbb2SVadim Pasternak return ret; 9762c6fcbb2SVadim Pasternak 9772c6fcbb2SVadim Pasternak return pmbus_do_probe(client, info); 9782c6fcbb2SVadim Pasternak } 9792c6fcbb2SVadim Pasternak 9802c6fcbb2SVadim Pasternak static const struct of_device_id __maybe_unused mp2975_of_match[] = { 9815239277eSPatrick Rudolph {.compatible = "mps,mp2971", .data = (void *)mp2971}, 9825239277eSPatrick Rudolph {.compatible = "mps,mp2973", .data = (void *)mp2973}, 9831f6f34d0SPatrick Rudolph {.compatible = "mps,mp2975", .data = (void *)mp2975}, 9842c6fcbb2SVadim Pasternak {} 9852c6fcbb2SVadim Pasternak }; 9862c6fcbb2SVadim Pasternak MODULE_DEVICE_TABLE(of, mp2975_of_match); 9872c6fcbb2SVadim Pasternak 9882c6fcbb2SVadim Pasternak static struct i2c_driver mp2975_driver = { 9892c6fcbb2SVadim Pasternak .driver = { 9902c6fcbb2SVadim Pasternak .name = "mp2975", 9912c6fcbb2SVadim Pasternak .of_match_table = of_match_ptr(mp2975_of_match), 9922c6fcbb2SVadim Pasternak }, 9931975d167SUwe Kleine-König .probe = mp2975_probe, 9942c6fcbb2SVadim Pasternak .id_table = mp2975_id, 9952c6fcbb2SVadim Pasternak }; 9962c6fcbb2SVadim Pasternak 9972c6fcbb2SVadim Pasternak module_i2c_driver(mp2975_driver); 9982c6fcbb2SVadim Pasternak 9992c6fcbb2SVadim Pasternak MODULE_AUTHOR("Vadim Pasternak <vadimp@nvidia.com>"); 10002c6fcbb2SVadim Pasternak MODULE_DESCRIPTION("PMBus driver for MPS MP2975 device"); 10012c6fcbb2SVadim Pasternak MODULE_LICENSE("GPL"); 1002b94ca77eSGuenter Roeck MODULE_IMPORT_NS(PMBUS); 1003